1. Field of the Invention
The present invention generally relates to a transmission line, more particularly to a transmission line that adopts double-contact connectors to be as main transmission interfaces.
2. Description of the Related Art
With advances in technology, computer has become popular in our lives, and that to cope with the rapid development of computer peripheral electronic devices, the market also developed a variety of different types of connectors so as to connect with peripheral electronic devices with different transmission interfaces.
In general, the connector has a male connector and a female connector corresponding to the male connector, and a male connector cannot plug into a female connector that is not the same connecting interface with the male connector, and a certain direction shall be followed while a male connector and a female connector plug into each other. If the direction is wrong, the plug may not work.
For Universal Serial Bus (USB) connector, each of the male USB connector and the female USB connector both has a tongue portion therein. If plugged in a wrong direction, the tongue portion in the male USB connector and the tongue portion in the female USB connector may be against to each other. For general users, such design is a foolproof design, but for other users, the application is really not flexible and inconvenient.
Accordingly, the market proposes a double-plug female connector. The design of the double-plug female connector is to dispose the tongue portion thereof in the middle of the connector, so as to divide the connector into an upper accommodating area and a lower accommodating area and dispose connecting pins in an upper layer and a lower layer respectively. So, when the front surface of the male connector plugs into the female connector, the tongue portion of the male connector may insert into the upper accommodating area and electrically connect with the conducting pins of the upper accommodating area. In addition, when the rear surface of the male connector plugs into the female connector, the tongue portion of the male connector may insert into the lower accommodating area and electrically connect with the conducting pins of the lower accommodating area. Therefore, regardless of the male connector plugging into the female connector via the front surface or the rear surface, the plug can be made and the electrical connection can be made as well.
There are two sets of conducting pins in aforementioned female connector, so that the cost is much higher than the cost of a prior female connector. However, to use a general male connector to connect with the female connector, only one set of conducting pins in the female connector are electrically connected, and therefore the female connector can only achieve a transmission rate that is the same as the prior female connector, so that it does not fit an economic effect.
The main objective of the present invention is to provide a transmission line with double-contact connectors, which is able to connect with two electronic devices that respectively have double-contact female connectors, so as to have a data transmission rate better than prior connectors.
To approach aforesaid objective, the present invention mainly has two double-contact connectors and a plurality of connecting lines. Each double-contact connector has an insulating member, an upper pin set and a lower pin set. A top surface of the insulating member forward extends to form an upper tongue portion, a bottom surface of the insulating member forward extends to form a lower tongue portion, the upper pin set disposes in the upper tongue portion, the lower pin set disposes in the lower tongue portion, the upper pin set and the upper tongue portion compose an upper connecting interface, the lower pin set and the lower tongue portion compose a lower connecting interface. Further, the two double-contact connectors electrically connect with the two ends of the plurality of connecting lines respectively.
Compared to related arts, the present invention uses the two double-contact connectors of the transmission line to respectively connect with the two double-contact female connectors of the two electronic devices. Hence, the two connecting interfaces of the two double-contact connectors are able to transmit data simultaneously, so as to have a transmission rate better than a related connector with a single interface.
The objects, spirits, and advantages of the preferred embodiments of the present invention will be readily understood by the accompanying drawings and detailed descriptions, wherein:
Following preferred embodiments and figures will be described in detail so as to achieve aforesaid objects. Please refer to
Please refer to
Please refer to
More specifically, the upper tongue portion 111 has a plurality of upper pin slots 1111 and the lower tongue portion 112 has a plurality of lower pin slots 1121, the plural first connecting pins 120 and the plural second connecting pins 130 dispose in the plural upper pin slots 1111 and the plural lower pin slots 1121 respectively. The plural first connecting pins 120 respectively have a first conducting portion 121 and a first welding portion 122 away from the first conducting portion 121, and the plural second connecting pins 130 respectively have a second conducting portion 131 and a second welding portion 132 away from the second conducting portion 131.
The number of the plurality of connecting lines 2 is corresponding to the total number of the plural first connecting pins 120 and the plural second connecting pins 130. The plural first connecting pins 120 and the plural second connecting pins 130 respectively go through the first welding portions 122 and the second welding portions 132 in order to electrically connect with the plural connecting lines 2. As shown in
Above is a preferred embodiment of the present invention. For another preferred embodiment, the upper connecting interface and the lower connecting interface are two USB 3.0 connecting interfaces, as an example, the number of the plural first connecting pins 120 is nine, the number of the plural second connecting pins 130 is nine, the number of the plural connecting lines 2 is eighteen.
As shown in
As shown in
Please simultaneously refer to
As shown in
While the two double-contact connectors 1 of the transmission line 3 respectively plug into the female connectors 4 and 5, the accommodating rooms 110 contain the tongue portions 42 and 52 of the female connectors 4 and 5, and the upper pin sets 12 electrically connect with the plural first conducting pins 43 and 53, and the lower pin sets 13 electrically connect with the plural second conducting pins 44 and 54. For the embodiment, if the female connector 4 supports that the two sets of the first conducting pins 43 and the second conducting pins 44 are simultaneously used, and the female connector 5 supports that the two sets of the first conducting pins 53 and the second conducting pins 54 are simultaneously used as well, hence the first conducting pins 43 and 53 are able to connect with the upper pin sets 12 of the two double-contact connectors 1 of the transmission line 3 respectively in order to build a first data transmission channel; the second conducting pins 44 and 54 are able to connect with the lower pin sets 13 of the two double-contact connectors 1 of the transmission line 3 respectively in order to build a second data transmission channel. Therefore, through the transmission line 3 of the present invention, the transmission rate of the transmission line 3 is twice as fast as the transmission rate of a general transmission line.
Please refer to
Please be noted, the number of the plural connecting lines 6 is corresponding to the total number of the plural first connecting pins 120 and the plural second connecting pins 130. If both the upper connecting interface and the lower connecting interface are USB 2.0 connecting interfaces, the numbers of the plural first connecting pins 120 and the plural second connecting pins 130 are four respectively, the number of the plural connecting lines 6 is eight, wherein four of one end electrically connecting with the plural first connecting pins 120 belong to the first channel, another end is to connect with one of the two male connector 7, another four of one end electrically connecting with the plural second connecting pins 130 belong to the second channel, another end is to connect with the other one of the two male connector 7. Further, If both the upper connecting interface and the lower connecting interface are USB 3.0 connecting interfaces, the numbers of the plural first connecting pins 120 and the plural second connecting pins 130 are nine respectively, the number of the plural connecting lines 6 is eighteen, wherein nine of one end electrically connecting with the plural first connecting pins 120 belong to the first channel, another nine of one end electrically connecting with the plural second connecting pins 130 belong to the second channel.
Please simultaneously refer to
As shown in
The two female connectors 9 and 9′ respectively have two insulating members 91 and 91′, the front ends of the two insulating members 91 and 91′ forward extend to form two tongue portions 92 and 92′. The female connectors 9 and 9′ respectively have plural conducting pins 93 and 93′ that dispose on the two tongue portions 92 and 92′. The transmission line 8 of the present invention is to connect with the female connector 4 of the electronic device A via the double-contact connector 1 and to respectively connect with the female connectors 9 and 9′ of the two electronic devices C and D via the two male connectors 7.
More specifically, if the female connector 4 supports that the two sets of conducting pins 43 and 44 can be used simultaneously, the plural first conducting pins 43 can connect with the plural connecting lines 6 (if it is an USB 2.0 connecting interface, the plural connecting lines 6 are four therein; if it is an USB 3.0 connecting interface, the plural connecting lines 6 are nine therein) belonging to the first channel via the upper pin set 12 of the double-contact connector 1, further to connect with the electronic device C via one of the male connectors 7. Further, the plural second conducting pins 44 can connect with the plural connecting lines 6 belonging to the second channel via the lower pin set 13 of the double-contact connector 1, further to connect with the electronic device D via another one of the male connectors 7. Therefore, the electronic device A can connect with the transmission line 8 via the female connector 4 in order to transmit data to the electronic devices C and D simultaneously.
As aforesaid, the transmission line 8 of the present invention mainly transmits the same of different data to the two different electronic devices C and D from the electronic device A at the same time, so as to improve convenience.
Although the invention has been disclosed and illustrated with reference to particular embodiments, the principles involved are susceptible for use in numerous other embodiments that will be apparent to persons skilled in the art. This invention is, therefore, to be limited only as indicated by the scope of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
101212769 U | Jul 2012 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
4981438 | Bekhiet | Jan 1991 | A |
5295843 | Davis et al. | Mar 1994 | A |
7059914 | Tsai | Jun 2006 | B2 |
7074057 | Chiran et al. | Jul 2006 | B2 |
7572145 | Wu | Aug 2009 | B1 |
20050014418 | Ji et al. | Jan 2005 | A1 |
20090111330 | Lin et al. | Apr 2009 | A1 |
20100087093 | Yu et al. | Apr 2010 | A1 |
20100093217 | Shi et al. | Apr 2010 | A1 |
20110028046 | Wang et al. | Feb 2011 | A1 |
20110306244 | Zhang et al. | Dec 2011 | A1 |
20130171884 | Ho | Jul 2013 | A1 |
20130178105 | Hsueh | Jul 2013 | A1 |
20130203283 | Tai et al. | Aug 2013 | A1 |
20130236144 | Tong et al. | Sep 2013 | A1 |
20140004749 | Chang | Jan 2014 | A1 |
Number | Date | Country | |
---|---|---|---|
20140004749 A1 | Jan 2014 | US |